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    • 1. 发明授权
    • Active structures for heat exchanger
    • 热交换器的主动结构
    • US09140502B2
    • 2015-09-22
    • US12832434
    • 2010-07-08
    • Scott F. KasluskyBrian St. RockJaeseon LeeYirong Jiang
    • Scott F. KasluskyBrian St. RockJaeseon LeeYirong Jiang
    • F28F13/12F28F13/06H05K7/20
    • F28F13/06F28F13/12F28F13/125
    • A heat exchanger includes a plurality of channels and one or more active flow disruption members disposed at an entrance to the plurality of channels. The active flow disruption members are configured to induce unsteadiness in a flow through the plurality of channels to increase thermal energy transfer in the plurality of channels. A method for transferring thermal energy from a heat exchanger includes locating one or more active flow disruption members at an entrance to a plurality of channels of the heat exchanger. A flow is directed across the one or more active flow disruption members into the plurality of channels and an unsteadiness is produced in the flow via the one or more active flow disruption members. The unsteadiness in the flow increases the transfer of thermal energy between the heat exchanger and the flow.
    • 热交换器包括多个通道和设置在多个通道的入口处的一个或多个主动流量中断构件。 主动流动破坏构件构造成在通过多个通道的流中引起不稳定,以增加多个通道中的热能传递。 用于从热交换器传递热能的方法包括将一个或多个主动流动破坏构件定位在热交换器的多个通道的入口处。 一个流被引导到一个或多个主动流中断构件进入多个通道中,并且在流中经由一个或多个主动流中断构件产生不稳定性。 流动中的不稳定性增加了热交换器和流量之间的热能传递。
    • 2. 发明申请
    • ACTIVE STRUCTURES FOR HEAT EXCHANGER
    • 热交换器的主动结构
    • US20120006511A1
    • 2012-01-12
    • US12832434
    • 2010-07-08
    • Scott F. KasluskyBrian St. RockJaeseon LeeYirong Jiang
    • Scott F. KasluskyBrian St. RockJaeseon LeeYirong Jiang
    • F28F13/12
    • F28F13/06F28F13/12F28F13/125
    • A heat exchanger includes a plurality of channels and one or more active flow disruption members disposed at an entrance to the plurality of channels. The active flow disruption members are configured to induce unsteadiness in a flow through the plurality of channels to increase thermal energy transfer in the plurality of channels. A method for transferring thermal energy from a heat exchanger includes locating one or more active flow disruption members at an entrance to a plurality of channels of the heat exchanger. A flow is directed across the one or more active flow disruption members into the plurality of channels and an unsteadiness is produced in the flow via the one or more active flow disruption members. The unsteadiness in the flow increases the transfer of thermal energy between the heat exchanger and the flow.
    • 热交换器包括多个通道和设置在多个通道的入口处的一个或多个主动流量中断构件。 主动流动破坏构件构造成在通过多个通道的流中引起不稳定,以增加多个通道中的热能传递。 用于从热交换器传递热能的方法包括将一个或多个主动流动破坏构件定位在热交换器的多个通道的入口处。 一个流被引导到一个或多个主动流中断构件进入多个通道中,并且在流中经由一个或多个主动流中断构件产生不稳定性。 流动中的不稳定性增加了热交换器和流量之间的热能传递。
    • 4. 发明申请
    • MINICHANNEL HEAT EXCHANGER HEADER INSERT FOR DISTRIBUTION
    • MINICHANNEL热交换器插头用于分配
    • US20100282454A1
    • 2010-11-11
    • US12513787
    • 2006-11-13
    • Yirong JiangJules R. MunozYoung K ParkParmesh Verma
    • Yirong JiangJules R. MunozYoung K ParkParmesh Verma
    • F28F9/02
    • F28D1/05366F25B39/028F28D2021/0071F28F9/0273
    • An inlet header of a microchannel heat exchanger is provided with a first insert disposed within the inlet header and extending substantially the length thereof, and having a plurality of openings for the flow of refrigerant into the internal confines of the inlet header and then to the channels. A second insert, disposed within the first insert, extends substantially the length of the first insert and is of increasing cross sectional area toward its downstream end such that annular cavity is formed between the first and second insert. The annular cavity of decreasing cross sectional area provides for the maintenance of a substantially constant mass flux of the refrigerant along the length of the annulus so as to thereby maintain an annular flow regime of the liquid and thereby promote uniform flow distribution to the channels.
    • 微通道热交换器的入口集管设置有设置在入口集管内并基本上延伸的第一插入件,并且具有多个开口用于使制冷剂流入入口集管的内部区域,然后到通道 。 设置在第一插入件内的第二插入件基本上延伸第一插入件的长度,并且朝向其下游端具有增大的横截面积,使得在第一和第二插入件之间形成环形空腔。 横截面积减小的环形空腔提供沿着环形空间的长度维持制冷剂基本恒定的质量通量,从而保持液体的环形流动状态,从而促进流向均匀的通道。
    • 10. 发明授权
    • Minichannel heat exchanger header insert for distribution
    • 小通道热交换器插头用于分配
    • US08171987B2
    • 2012-05-08
    • US12513787
    • 2006-11-13
    • Yirong JiangJules R. MunozYoung K. ParkParmesh Verma
    • Yirong JiangJules R. MunozYoung K. ParkParmesh Verma
    • F28F9/22F25B39/02
    • F28D1/05366F25B39/028F28D2021/0071F28F9/0273
    • An inlet header of a microchannel heat exchanger is provided with a first insert disposed within the inlet header and extending substantially the length thereof, and having a plurality of openings for the flow of refrigerant into the internal confines of the inlet header and then to the channels. A second insert, disposed within the first insert, extends substantially the length of the first insert and is of increasing cross sectional area toward its downstream end such that annular cavity is formed between the first and second insert. The annular cavity of decreasing cross sectional area provides for the maintenance of a substantially constant mass flux of the refrigerant along the length of the annulus so as to thereby maintain an annular flow regime of the liquid and thereby promote uniform flow distribution to the channels.
    • 微通道热交换器的入口集管设置有设置在入口集管内并基本上延伸的第一插入件,并且具有多个开口用于使制冷剂流入入口集管的内部区域,然后到通道 。 设置在第一插入件内的第二插入件基本上延伸第一插入件的长度,并且朝向其下游端具有增大的横截面积,使得在第一和第二插入件之间形成环形空腔。 横截面积减小的环形空腔提供沿着环形空间的长度维持制冷剂基本恒定的质量通量,从而保持液体的环形流动状态,从而促进流向均匀的通道。